Structure Characterization and Luminescence Studies of MgO:Li Calcinated at Different Temperatures via Solution Combustion and Sol-Gel Methods
Yıl 2019,
Cilt: 2 Sayı: 2, 45 - 48, 26.12.2019
Veysi Güçkan
,
Volkan Altunal
Adnan Özdemir
Zehra Yeğingil
Öz
In the
present study, lithium (Li) doped magnesium oxide (MgO) samples were prepared
using Solution Combustion Synthesis (SCS) and Sol-Gel (SG) methods. Their
photoluminescence (PL) and thermoluminescence (TL) behaviors were determined
after the different calcination temperatures. The aim of this study is to
investigate the effect of different calcination temperatures on the PL and TL
sensitivities of lithium doped MgO (MgO:Li) samples in pellet and powder forms
prepared by SCS and SG methods. The structural characterization analysis of
MgO:Li powder and pellets were carried out using X-ray diffraction (XRD) and scanning
electron microscope (SEM) methods. The results of these structure analysis
showed that MgO:Li samples have different crystal properties when changing
calcination temperatures were applied during the preparation of the samples.
Luminescence properties of the MgO samples which were synthesized at different
calcination temperatures were investigated by the Photoluminescence (PL) and TL
techniques. The maximum TL intensity of the samples was obtained at calcination
temperature of 800 and 1000 oC for the SCS and SG methods, respectively.
Uncontrolled chromium impurities were observed in MgO samples by using PL
measurements. On the PL spectrum, peaks indicating chromium (III) (Cr3+)
transmission in the red portion of the spectrum at 672, 698 and 721 nm are clearly
evident. We investigated high dose sensitivity in these samples. This study
presents optimum calcination temperatures in order to obtain maximum PL and TL
sensitivity of MgO sample. It is also clear that it will contribute to the
literature that it can be studied as a new dosimetric material.
Destekleyen Kurum
Çukurova Üniversitesi
Proje Numarası
FDK-2018-10599
Teşekkür
This research was partly funded by the Cukurova University Research Projects Development and Coordination Unit under the project numbers FDK-2018-10599. We thank Cukurova University for supporting the project.
Kaynakça
- [1] Bos, A., Prokić, M., & Brouwer, J. (2006). Optically and thermally stimulated luminescence characteristics of MgO: Tb3+. Radiation Protection Dosimetry, 119(1-4), 130-133.
- [2] Klein, C., & Hurlbut Jr, C. (1999). Manual of Mineralogy. John Wiley & Sons. Inc., New York.
- [3] Oliveira, L., Doull, B., & Yukihara, E. (2013). Investigations of MgO: Li, Gd thermally and optically stimulated luminescence. Journal of Luminescence, 137, 282-289.
- [4] Oliveira, L., Milliken, E., & Yukihara, E. (2013). Development and characterization of MgO: Nd, Li synthesized by solution combustion synthesis for 2D optically stimulated luminescence dosimetry. Journal of Luminescence, 133, 211-216.
- [5] Oliveira, L., Yukihara, E., & Baffa, O. (2019). Lanthanide-doped MgO: A case study on how to design new phosphors for dosimetry with tailored luminescent properties. Journal of Luminescence.
- [6] Shukla, S., Parashar, G., Mishra, A., Misra, P., Yadav, B., Shukla, R., . . . Dubey, G. (2004). Nano-like magnesium oxide films and its significance in optical fiber humidity sensor. Sensors and Actuators B: Chemical, 98(1), 5-11.
- [7] Yukihara, E., Milliken, E., Oliveira, L., Orante-Barrón, V., Jacobsohn, L. G., & Blair, M. (2013). Systematic development of new thermoluminescence and optically stimulated luminescence materials. Journal of Luminescence, 133, 203-210.
Yıl 2019,
Cilt: 2 Sayı: 2, 45 - 48, 26.12.2019
Veysi Güçkan
,
Volkan Altunal
Adnan Özdemir
Zehra Yeğingil
Proje Numarası
FDK-2018-10599
Kaynakça
- [1] Bos, A., Prokić, M., & Brouwer, J. (2006). Optically and thermally stimulated luminescence characteristics of MgO: Tb3+. Radiation Protection Dosimetry, 119(1-4), 130-133.
- [2] Klein, C., & Hurlbut Jr, C. (1999). Manual of Mineralogy. John Wiley & Sons. Inc., New York.
- [3] Oliveira, L., Doull, B., & Yukihara, E. (2013). Investigations of MgO: Li, Gd thermally and optically stimulated luminescence. Journal of Luminescence, 137, 282-289.
- [4] Oliveira, L., Milliken, E., & Yukihara, E. (2013). Development and characterization of MgO: Nd, Li synthesized by solution combustion synthesis for 2D optically stimulated luminescence dosimetry. Journal of Luminescence, 133, 211-216.
- [5] Oliveira, L., Yukihara, E., & Baffa, O. (2019). Lanthanide-doped MgO: A case study on how to design new phosphors for dosimetry with tailored luminescent properties. Journal of Luminescence.
- [6] Shukla, S., Parashar, G., Mishra, A., Misra, P., Yadav, B., Shukla, R., . . . Dubey, G. (2004). Nano-like magnesium oxide films and its significance in optical fiber humidity sensor. Sensors and Actuators B: Chemical, 98(1), 5-11.
- [7] Yukihara, E., Milliken, E., Oliveira, L., Orante-Barrón, V., Jacobsohn, L. G., & Blair, M. (2013). Systematic development of new thermoluminescence and optically stimulated luminescence materials. Journal of Luminescence, 133, 203-210.